추천 제품
material
plain filter
polycarbonate membrane
white filter
무균
non-sterile
특징
hydrophilic
제조업체/상표
Isopore™
Millipore
파라미터
0.007 L/min-cm2-psi air flow rate
140 °C max. temp.
3.36 mL/min-cm2-psi water flow rate (maximum flow rate per 1.0 psi)
~16 mL/min-cm2 water flow rate at 10 psi (typical results)
필터 직경
142 mm
두께
25 μm
중량 추출물
<1%
refractive index
n/D 1.6
기질
Isopore™
공극 크기
0.22 μm pore size
13.8 % porosity
버블 포인트(bubble point)
≥5.2 bar, air with water at 23 °C
배송 상태
ambient
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일반 설명
The Isopore™ membrane is composed of a polycarbonate film, with a smooth, glass-like surface. This enables a clearer sample observation in optical or electron microscopy. It is useful in the analysis of airborne contaminants. Also, the Isopore™ membrane has a precise pore diameter and a consistent pore size. It may find applications in epifluorescent microscopy and chemotaxis assays.
애플리케이션
- Chemotaxis
- Bioassays
- Cytology
- Air monitoring
- SEM analysis
- Sterility testing
- Microplastics analysis
- Microplastics analysis grade water
Isopore™ Membrane Filter has been used:
- for the separation of respirable particles from sanded composites
- to filter particulate organic matter (POM) from seawater
- to concentrate the prokaryotic biomass from ocean water sample
특징 및 장점
- Particle retention on the surface for easy counting and analysis.
- Isopore™ membranes display low background interference.
- Rapid drying and minimal sample analysis time.
- Translucent material.
- Also available in a brown variety.
주의사항
Possible reduction in flow rates may occur after autoclaving.
법적 정보
ISOPORE is a trademark of Merck KGaA, Darmstadt, Germany
시험 성적서(COA)
제품의 로트/배치 번호를 입력하여 시험 성적서(COA)을 검색하십시오. 로트 및 배치 번호는 제품 라벨에 있는 ‘로트’ 또는 ‘배치’라는 용어 뒤에서 찾을 수 있습니다.
ACS nano, 11(9), 8849-8863 (2017-08-02)
Pulmonary toxicity studies on carbon nanotubes focus primarily on as-produced materials and rarely are guided by a life cycle perspective or integration with exposure assessment. Understanding toxicity beyond the as-produced, or pure native material, is critical, due to modifications needed
Bacterial assemblages of the eastern Atlantic Ocean reveal both vertical and latitudinal biogeographic signatures
Biogeosciences (Online), 9(6) (2012)
Nature communications, 12(1), 1150-1150 (2021-02-21)
The formation of sinking particles in the ocean, which promote carbon sequestration into deeper water and sediments, involves algal polysaccharides acting as an adhesive, binding together molecules, cells and minerals. These as yet unidentified adhesive polysaccharides must resist degradation by
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